• 中文核心期刊
  • CSCD来源期刊
  • 中国科技核心期刊
  • CA、CABI、ZR收录期刊

鼠伤寒沙门菌yibTcsgD双基因缺失株的构建及对生物膜形成的影响

Construction and Biofilm Formation of yibT-and-csgD-deleted Salmonella typhimurium

  • 摘要:
      目的  通过构建鼠伤寒沙门菌(Salmonella typhimuriumyibTcsgD双基因缺失株及缺失株的回补株,探究其对鼠伤寒沙门菌生物膜形成的影响,以期为沙门菌的有效防控提供新策略。
      方法  以鼠伤寒沙门菌野生株CVCC541(wild-type, WT)为研究对象,利用λ-red同源重组技术构建yibTcsgD基因缺失株;利用重组载体技术构建其基因回补株;利用结晶紫染色法比较鼠伤寒沙门菌突变株生物膜形成能力的差异;通过苯酚-硫酸法测定胞外多糖含量、半固体平板测定运动能力的变化;比较不同突变菌株自聚集能力的变化;通过扫描电镜观察生物膜结构;最后利用荧光定量PCR技术鉴定生物膜形成过程中关键基因的mRNA表达水平。
      结果  成功构建了鼠伤寒沙门菌yibTcsgD的双基因缺失株WTΔyibTΔcsgD和csgD基因单缺失株WTΔcsgD及基因缺失株的回补株WTΔcsgDΔyibT/pcsgD和WTΔcsgD/pcsgD。 yibTcsgD基因的缺失降低了生物膜的形成能力、胞外多糖含量和自聚集能力,增强了运动能力;invFsdiA基因的mRNA表达水平下降。
      结论  yibTcsgD基因缺失会降低鼠伤寒沙门菌的生物膜形成能力。

     

    Abstract:
      Objective   Strains of Salmonella typhimurium with yibT and/or csgD deleted were created to observe the effect on its biofilm formation for effective prevention and control of the foodborne pathogen.
      Method   The λ-red homologous recombination technique was applied to create the gene-deleted mutants, WTΔyibTΔcsgD and WTΔcsgD, of WT S. typhimurium (CVCC541). Subsequently, the gene-complemented strains were also obtained using recombinant vector technology. Differences of the mutants in biofilm formation were determined by crystal violet staining, content of exopolysaccharide measured by phenol-sulfuric acid, mobility tested on semi-solid agar plates, and self-aggregation monitored. Under a scanning electron microscope, biofilm structure was observed. Finally, mRNA expressions of the target genes in the biofilm were identified by fluorescence quantitative PCR.
      Result  A double-gene deleted WTΔyibTΔcsgD, a WTΔcsgD without csgD, and their respective complemented strains, WTΔcsgDΔyibT/pcsgD and WTΔcsgD/pcsgD, were successfully obtained. The double-gene deletion significantly reduced the ability in forming biofilm, the content of exopolysaccharide, and the aggregation of the genes to targets, and the mRNA expressions of invF and sdiA in WT S. typhimurium.
      Conclusion  Deletion of yibT and csgD significantly impacted some critical biofunctions of S. typhimurium that could become a new approach for control of the foodborne disease.

     

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